ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2 Exhibit)

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1 Exhibit R A Distributed Common Ground/Surface Systems ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2 Exhibit) COST (In Thousands) Actual to Total Total Program Element (PE) Continuing Continuing 956 Distributed Common Ground System (DCGS) (MIP) Continuing Continuing D06 DCGS-A FUSION INTEGRATION (MIP) D07 DCGS-A COMMON MODULES (MIP) D08 DCGS-A SENSOR INTEGRATION (MIP) D15 MUSE & TES TADSS (MIP) A. Mission Description and Budget Item Justification: Distributed Common Ground System - Army (DCGS-A) will serve as the primary ground system of systems for airborne and ground sensor platforms. DCGS-A enables the commander to achieve situational understanding by leveraging multiple sources of data, information and intelligence to synchronize the elements of Joint and Combined Arms combat power to See First, Understand First, Act First and Finish Decisively. The core functions of DCGS-A are receipt and processing of select Intelligence, Surveillance and Reconnaissance (ISR) sensor data, control of select Army sensor systems, intelligence synchronization, ISR planning, reconnaissance and surveillance (R&S) integration, fusion of sensor information, and direction and distribution of relevant threat, non-aligned, friendly and environmental (weather and geospatial) information. DCGS-A will support three primary roles: 1. As an analyst tool set, DCGS-A provides the User a capability to collaborate, synchronize and integrate organic and non-organic direct and general support collection elements with operations; 2. As the ISR component of the Army Battle Command, DCGS-A provides the ability to discover and use all relevant threat, non-combatant, weather, and geospatial data and to evaluate technical data and information on behalf of a Commander; 3. DCGS-A provides organizational elements the ability to control select sensor platforms/payloads and process the collected data. DCGS-A draws information from a wide variety of automated and manual sources; on-board sensors, space platforms and unattended air and ground vehicles to enable the land component commander to achieve situational understanding, execute battle command, synchronize fires and effects and rapidly shift battle focus to protect the force and employ his forces more effectively. DCGS-A allows commanders at all levels to visualize and understand the threat and environment, predict threat intentions, execute targeting through targeting support, conduct ISR integration and support Information Operations. DCGS-A Projects D06 (Fusion Integration), D07 (Common Modules) and D08 (Sensor Integration) have been consolidated into a single DCGS-A Project (956) for ease of reporting purposes beginning in FY10. Project 956 provides the DCGS-A enterprise system level design, net-centric architecture and infrastructure, integration of the DCGS Integrated Backbone (DIB), single and Multi-Intelligence automated fusion capabilities, development of a common set of ISR analysis tools, and sensor integration to include sensor control, tasking and interoperability. Project D15 funds Training Aids, Devices, Simulators and Simulations (TADSS) for the Tactical Exploitation System (TES). DCGS-A includes hardware for Fixed and Mobile configurations and common software that is scaleable and tailored by echelon and is interoperable with sensors, other Battlefield Operating Systems (BOS), and the DoD Distributed Common Ground/Surface System (DCG/SS) Family of Systems (FoS). Within the Brigade Combat Teams (BCTs), DCGS-A provides the Mobile ISR capability as well as an embedded software application on the Future Combat System (FCS) FoS and other select platforms. At the A Item No. 170 Page 1 of 16 Exhibit R-2 Distributed Common Ground/Surface Systems 408 Budget Item Justification

2 Exhibit R A Distributed Common Ground/Surface Systems ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2 Exhibit) Corps, Division and Echelons Above Corps (EAC), DCGS-A is composed of hardware and software in Mobile and Fixed site configurations. As a system of systems, DCGS-A will consolidate and replace the capabilities found in the following Current Force systems: Joint Intelligence Operations Capability-Iraq (JIOC-I), All Source Analysis System (ASAS), Counter Intelligence/Human Intelligence (CI/HUMINT) Single Source Workstation, Tactical Exploitation System (TES), Guardrail Common Sensor (GRCS) Intelligence Processing Facility (IPF), Prophet Control, Common Ground Station (CGS), Digital Topographic Support System (DTSS) and Integrated Meteorological System (IMETS), sensor control and processing of select Unmanned Aerial Vehicles (UAVs) and Enhanced Trackwolf processing capabilities. DCGS-A is a key component of Transformation and a top Army priority A Item No. 170 Page 2 of 16 Exhibit R-2 Distributed Common Ground/Surface Systems 409 Budget Item Justification

3 Exhibit R A Distributed Common Ground/Surface Systems ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2 Exhibit) B. Program Change Summary Previous President's Budget () Current BES/President's Budget () Total Adjustments Congressional Program Reductions -228 Congressional Rescissions Congressional Increases Reprogrammings SBIR/STTR Transfer Adjustments to Budget Years Change Summary Explanation: Funding - FY08: $5.529 million GWOT supplemental to design and build Mobile Brigade Combat Team test article to support Mobile Basic LUT. $28.6 million reprogrammed to fund DCGS-A SPIRNET to classified programs. FY10 $170.8M: $147.8M increase to support continuing DCGS-A system development; $23M to support ISR Surge A Item No. 170 Page 3 of 16 Exhibit R-2 Distributed Common Ground/Surface Systems 410 Budget Item Justification

4 Exhibit R-2a A (956) Distributed Common Ground System (DCGS) (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) 956 COST (In Thousands) 956 Distributed Common Ground System (DCGS) (MIP) Actual to Total Continuing Continuing A. Mission Description and Budget Item Justification: Distributed Common Ground System - Army (DCGS-A) will serve as the primary ground system of systems for Army airborne and ground sensor platforms defined as Future Force systems. DCGS-A enables the commander to achieve situational understanding by leveraging multiple sources of data, information, and intelligence to synchronize the elements of Joint and Combined Arms combat power (maneuver, maneuver support and maneuver sustainment support). The core functions of DCGS-A are: receipt and processing of space, airborne, ground and maritime Intelligence, Surveillance and Reconnaissance (ISR) sensor data; control of select Army and joint ISR sensor systems; intelligence synchronization; ISR planning, reconnaissance and surveillance (R&S) integration; fusion of sensor information, and direction and distribution/dissemination of sensor information. It draws information from a wide variety of automated and manual sources; on-board sensors, space platforms, unattended air and ground vehicles, existing and new ISR capabilities, and an assortment of databases to enable the land component commander to execute battle command, synchronize fires and effects, rapidly shift battle focus, achieve situational understanding, protect the force, and employ forces more effectively. DCGS-A allows commanders at all levels to visualize, analyze and understand the threat and environment, predict threat intentions, execute targeting through targeting support, conduct ISR integration and support Information Operations. This project provides for the design, development, integration and test of the DCGS-A system of systems at all echelons, from embedded DCGS-A up to Fixed Site operations. The effort includes system engineering, software integration and development, test & evaluation, and use of Modeling and Simulation (M&S) to develop DCGS-A Mobile systems with common multi-function hardware and software capable of performing all DCGS-A functions. It establishes the DCGS-A Federated Network Centric Enterprise, facilitating system integration and network-enabled capability of existing and future intelligence, surveillance and reconnaissance (ISR) ground stations, eventually consolidating these capabilities into a single system of systems. It matures DCGS-A sensor fusion and all source production capabilities, leveraging existing tools and on-going Future Combat System (FCS)/Science and Technology (S&T) developmental efforts to meet the requirements for battle management and situational awareness, intelligence preparation of the battlespace (battle damage assessments, course of action/predictive analysis, wargaming), target development (deliberate, time critical, high value/high payoff), collection/isr management (requirement and mission), electronic warfare/countermeasures, force protection, indications and warnings, operational security, and battlefield visualization and presentation. This project also addresses ISR sensor integration and interoperability with existing and new platforms and sensors to include a common data link solution. DCGS-A provides an enterprise level approach based on a Service Oriented Architecture (SOA) to provide Commanders' and Staffs' access to various ISR ground station information from any ground station, and data exchange between Army ISR ground stations for improved intelligence sharing and understanding. DCGS-A will achieve joint, allied and coalition interoperability through implementation of the 10.2 DCGS Integration Backbone (DIB) to access other Services data and information that is critical to the Land Component Commander. FY10 funds design, development and test of the DCGS-A Mobile Basic configuration to include the DCGS-A Software Baseline (DSB) A (956) Item No. 170 Page 4 of 16 Exhibit R-2a Distributed Common Ground System (DCGS) (MIP) 411 Budget Item Justification

5 Accomplishments/Planned Program: Continue design and development of DCGS-A enterprise level net-centric architecture in support of Current and Future Force systems Continue to evaluate, integrate and test new software applications and components for incorporation into the DCGS-A Software Baseline (DSB). Ongoing interoperability testing and evaluation to include Central Test Support Facility (CTSF) testing, Future Combat System (FCS) experimentation and integration and Joint testing and evaluation. Continue to migrate sensor fusion processes and Current Force systems capabilities (multi-int sources, geospatial and weather data) into DCGS-A Service Oriented Architecture (SOA) environment. Continue development and integration of SIGINT and All Source applications and the integration framework for DCGS-A Multi-Funtion Workstation (MFWS). (previously Project D06) Continued analysis and prototyping for porting sensor fusion mission applications into the FCS environment. (previously Project D06) 3550 Continue to develop and enhance two-way Battle Command to include Joint Command and Control (JC2) interoperability. (previously Project D07) Continue to isolate and integrate Current Force Multi-INT sensor (Human Intelligence, Imagery Intelligence, Signal Intelligence, Measurement and Signature Intelligence) modules into the DCGS-A network. Continued planning and analysis of Future Force Multi-INT sensor modules for incorporation into the DCGS-A network. (previously Project D08) DCGS-A ASAS Integration Continue Asymmetric Threat Response and Analysis Project (ATRAP) Continue Effects Based Approach to Operations Continue Heuristic Internet Protocol Engine Develop Constant Look Operational Support Environment (CLOSE) Develop Blast Risk Analysis and Mitigation Application (BRAMA). 800 Develop Beyond Line of Sight (BLOS) Network for MASINT Sensors. 800 Develop Silver Fox and MANTA Modify Intelligence Integrated Architecture (I2A) to apply cloud computing technology to operational and tactical DCGS-A architecture Total B. Other Program Funding Summary To Compl Total PE All Source Analysis System (B19)(MIP) PE CI/HUMINT Software Products (B41) (MIP) K28801 ASAS Modules (MIP) BK5275 CI HUMINT Automated Reporting and Collection (CHARCS)(MIP) Continuing Continuing BZ7316 DCGS-A (MIP) Continuing Continuing Comment: A (956) Item No. 170 Page 5 of 16 Exhibit R-2a Distributed Common Ground System (DCGS) (MIP) 412 Budget Item Justification

6 Exhibit R-2a A (956) Distributed Common Ground System (DCGS) (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) 956 C. Acquisition Strategy DCGS-A will be executed via an evolutionary acquisition approach, providing incremental capability through Technology Insertion of Current Force systems and System Development and Demonstration (SDD) of Capability Demonstration Document (CDD) requirements. Each version will incorporate and validate select DCGS-A capabilities into the overall DCGS-A system baseline, emphasizing migration of current force capabilities through integrated testing and continuous evaluation opportunities A (956) Item No. 170 Page 6 of 16 Exhibit R-2a Distributed Common Ground System (DCGS) (MIP) 413 Budget Item Justification

7 ARMY RDT&E C OST ANA LYSIS Exhibit R A (956) Distributed Common Ground System (DCGS) (MIP) ARMY RDT&E COST ANALYSIS (R3) 956 I. Product Development Contract Method & Type Design and development of DCGS-A architecture, software baseline and mobile hardware configuration. SETA Support to Visualization/Data Sharing, Modeling & Simulation DCGS-A Product Selection and Integration Performing Activity & Location Total PYs To Total Target Value of Contract CPAF Northrop Grumman Q Q Q Cont. Cont. Cont. T&M MIPR Booz-Allen, Eatontown, NJ CERDEC/SEC, Ft. Monmouth, NJ SIL Software Integration MIPR CERDEC/RDCOM Ft. Monmouth, NJ Q Cont Cont Q Cont Cont Q Q Q Cont. Cont. Cont. Metadata Catalog T&M MITRE, Eatontown, NJ Q Q Q Cont. Cont. Cont. Asymmetric Threat Response and Analysis Project Effects Based Approach to Operations MIPR Battle Labs Q Q 7300 MIPR Battle Labs Q Q 3400 DCGS-A ASAS Integration MIPR Battle Labs Q 2400 Advanced Architecture Designs for NCW MIPR Battle Labs Q 1600 Heuristic Internet Protocol Engine MIPR Battle Labs Q Q 3900 Blast Risk Analysis and Mitigation Application Constant Look Operational Support Environment (CLOSE) Beyond Line of Sight (BLOS) Network for MASINT Sensors MIPR Battle Labs Q MIPR Battle Labs 2Q MIPR Battle Labs 2Q Silver Fox and MANTA MIPR Battle Labs 2Q ISR Surge/Cloud Development MIPR CERDEC/SEC, Ft Monmouth, NJ Subtotal: Cont. Cont. Cont A (956) Item No. 170 Page 7 of 16 Exhibit R-3 Distributed Common Ground System (DCGS) (MIP) 414 ARMY RDT&E COST ANALYSIS

8 ARMY RDT&E C OST ANA LYSIS Exhibit R A (956) Distributed Common Ground System (DCGS) (MIP) ARMY RDT&E COST ANALYSIS (R3) 956 II. Support s Objective Doctrine/TTP Development Contract Method & Type Performing Activity & Location Matrix Support MIPR CECOM, Fort Monmouth NJ Total PYs To Total Target Value of Contract MIPR Ft. Huachuca, AZ Q 100 2Q Cont. Cont. Cont Q 600 1Q Q Cont. Cont. Cont. Subtotal: Cont. Cont. Cont. III. Test And Evaluation Joint Interoperability Test and Evaluation Operational Test support for DCGS-A Contract Method & Type Performing Activity & Location Total PYs To MIPR CTSF, Ft. Hood Q 250 2Q 250 2Q 4138 MIPR ATEC Q Q Q Subtotal: Total Target Value of Contract IV. Management Services Contract Method & Type Performing Activity & Location Total PYs To Project Management In-House PM, DCGS-A Q Q Q Cont. Cont. Cont. Total Target Value of Contract Subtotal: Cont. Cont. Cont. Project Total : Cont. Cont. Cont A (956) Item No. 170 Page 8 of 16 Exhibit R-3 Distributed Common Ground System (DCGS) (MIP) 415 ARMY RDT&E COST ANALYSIS

9 Exhibit R-4 Budget Item Justification A (956) Distributed Common Ground System (DCGS) (MIP) Schedule Profile (R4 Exhibit) 956 Event Name FY 08 FY 09 FY 10 FY 11 FY 12 FY 13 FY 14 FY Version 3.0 Fielding to OIF/OEF Version 3.0 Fielding to OIF/OEF Version 3.1 AIC Version 3.1 AIC Version 3.1 Limited User Test (LUT) Version 3.1 LUT Version 3.1 Fielding Version 3.1 Fielding Mobile Basic AIC Mobile Basic AIC Mobile Basic LUT Mobile Basic LUT (1) Mobile Basic Milestone C 1 Mobile Basic Milestone C Mobile Basic Initial Operational Capability (IOC) Mobile Basic IOC Mobile Basic Initial Operational Test & Eval (IOT&E) Mobile Basic IOT&E A (956) Item No. 170 Page 9 of 16 Exhibit R-4 Distributed Common Ground System (DCGS) (MIP) 416 Budget Item Justification

10 Exhibit R-4a Budget Item Justification A (956) Distributed Common Ground System (DCGS) (MIP) Schedule Detail (R4a Exhibit) 956 Schedule Detail FY 2011 FY 2012 FY 2013 FY 2014 FY 2015 Version 3.0 Fielding to OIF/OEF 2Q - 4Q 1Q - 2Q Version 3.1 AIC Version 3.1 Limited User Test (LUT) Version 3.1 Fielding 2Q - 4Q 1Q - 4Q 1Q - 3Q Mobile Basic AIC Mobile Basic LUT Mobile Basic Milestone C Mobile Basic Initial Operational Capability (IOC) Mobile Basic Initial Operational Test & Eval (IOT&E) 4Q 1Q 2Q 3Q 4Q 2Q 4Q A (956) Item No. 170 Page 10 of 16 Exhibit R-4a Distributed Common Ground System (DCGS) (MIP) 417 Budget Item Justification

11 Exhibit R-2a A (D06) DCGS-A FUSION INTEG RATION (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) D06 COST (In Thousands) Actual to Total D06 DCGS-A FUSION INTEGRATION (MIP) A. Mission Description and Budget Item Justification: Distributed Common Ground System - Army (DCGS-A) will serve as the primary ground system of systems for airborne and ground sensor platforms defined as Future Force systems. DCGS-A enables the commander to achieve situational understanding by leveraging multiple sources of data, information, and intelligence to synchronize the elements of Joint and Combined Arms combat power (maneuver, maneuver support and maneuver sustainment support). The core functions of DCGS-A are: collection and processing of space, airborne, ground and maritime Intelligence, Surveillance and Reconnaissance (ISR) sensor data; control of select Army and joint ISR sensor systems; intelligence synchronization; ISR planning, reconnaissance and surveillance (R&S) integration; fusion of sensor information, and direction and distribution/dissemination of sensor information. It draws information from a wide variety of automated and manual sources; on-board sensors, space platforms, unattended air and ground vehicles, existing and new ISR capabilities, and an assortment of databases to enable the land component commander to execute battle command, synchronize fires and effects, rapidly shift battle focus, achieve situational understanding, protect the force, and employ his forces more effectively. DCGS-A allows commanders at all levels to visualize and understand the threat and environment, predict threat intentions, execute targeting through targeting support, conduct ISR integration and support Information Operations. This project establishes DCGS-A sensor fusion and all source production capabilities, leveraging previously completed algorithm, on-going Future Combat System (FCS) and Science and Technology (S&T) developmental efforts to meet the requirements for battle management and situational awareness, intelligence preparation of the battlespace (battle damage assessments, course of action/predictive analysis, wargaming), target development (deliberate, time critical, high value/high payoff), collection/isr management (requirement and mission), electronic warfare/countermeasures, force protection, indications and warnings, operational security, and battlefield visualization and presentation. The Sensor Fusion capability will address both traditional intelligence disciplines (signals intelligence, imagery intelligence, human intelligence, measurements and signatures intelligence) from organic, Theater, and National assets (systems and databases), and non-traditional sources (open source intelligence, fire support) to achieve a complete and universal understanding of the situation in support of the commander/warfighter, battle command databases, and the Common Operational Picture (COP). The sensor fusion capability will support all types of units across a broad spectrum of both traditional and non-traditional operations, and improve interoperability with Joint, Allied, and Coalition forces. FY09 funds the development and integration of traditional and non-traditional multi-intelligence sensor fusion products and technologies into the DCGS-A Fixed, Mobile and Embedded configurations to produce a fully automated fusion capability. Funding for this efffort continues under Project 956 beginning in. Accomplishments/Planned Program: Continue normalization and integration of sensor fusion process and Multi-INT sources, geospatial and weather data Continue to enhance controlled interface technology for improved product distribution at multiple security levels A (D06) Item No. 170 Page 11 of 16 Exhibit R-2a DCGS-A FUSION INTEGRATION (MIP) 418 Budget Item Justification

12 Exhibit R-2a A (D06) DCGS-A FUSION INTEG RATION (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) D06 Continued analysis and prototyping for porting sensor fusion mission applications into the FCS environment Continue to migrate sensor fusion processes and Current Force systems capabilities into DCGS-A architecture/service Oriented Architecture (SOA) environment Total B. Other Program Funding Summary To Compl Total PE ASAS Evolutionary ACQ (B19) (TIARA) K28801 ASAS Modules Comment: C. Acquisition Strategy DCGS-A will be executed via an evolutionary acquisition approach, providing incremental capability through Technology Insertion of Current Force systems and System Development and Demonstration (SDD) of Capability Demonstration Document (CDD) requirements. Each increment will incorporate and validate select DCGS-A capabilities into the overall DCGS-A system baseline, emphasizing migration of current force capabilities through integrated testing and continuous evaluation opportunities A (D06) Item No. 170 Page 12 of 16 Exhibit R-2a DCGS-A FUSION INTEGRATION (MIP) 419 Budget Item Justification

13 Exhibit R-2a A (D07) DCGS-A COMMON MODULE S (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) D07 COST (In Thousands) Actual to Total D07 DCGS-A COMMON MODULES (MIP) A. Mission Description and Budget Item Justification: Distributed Common Ground System - Army (DCGS-A) will serve as the primary ground system of systems for airborne and ground sensor platforms defined as Objective Force systems. DCGS-A enables the commander to achieve situational understanding by leveraging multiple sources of data, information, and intelligence to synchronize the elements of Joint and Combined Arms combat power (maneuver, maneuver support and maneuver sustainment support). The core functions of DCGS-A are: collection and processing of space, airborne, ground and maritime Intelligence, Surveillance and Reconnaissance (ISR) sensor data; control of select Army and joint ISR sensor systems; intelligence synchronization; ISR planning, reconnaissance and surveillance (R&S) integration; fusion of sensor information, and direction and distribution/dissemination of sensor information. It draws information from a wide variety of automated and manual sources; on-board sensors, space platforms, unattended air and ground vehicles, existing and new ISR capabilities, and an assortment of databases to enable the land component commander to execute battle command, synchronize fires and effects, rapidly shift battle focus, achieve situational understanding, protect the force, and employ his forces more effectively. DCGS-A allows commanders at all levels to visualize and understand the threat and environment, predict threat intentions, execute targeting through targeting support, conduct ISR integration and support Information Operations. This project provides for the design, development, integration and test of the DCGS-A system of systems at all echelons, from embedded DCGS-A up to Fixed Site operations. The effort includes system engineering, software integration and development, test & evaluation, and use of Modeling and Simulation (M&S) to develop DCGS-A Mobile systems with common multi-function hardware and software combinations (i.e. user workstations) capable of performing all DCGS-A functions. Development will focus on common module hardware and software that is scaleable to allow commanders increased flexibility in the intelligence force package deployed such that it can be tailored to the echelon, location, and mission that DCGS-A will be required to support. Included in the development will be the stand-up of a Federated Systems Integration Lab (SIL) to assess and implement existing and new candidate software applications and components into the DCGS-A baseline design. A common set of ISR Analysis Tools to support collaboration, exploitation, fusion and collection management will be developed that operate within the construct of distributed, reach operations within the DCGS-A enterprise in order to maximize data access and minimize forward footprint. This will ultimately result in a DCGS-A design that reduces physical and logistics footprint, eases training burden, and decreases sustainability requirements. FY09 funds development of Technology Insertion modules providing DCGS-A capabilities into Current Force systems, common module multi-function hardware, Battle Command interoperability and integration and test of new software applications. Funding for this effort continues under Project 956 beginning in. Accomplishments/Planned Program: Continuation of Embedded DCGS-A design/analysis and Future Combat System (FCS) support Continue to evaluate, integrate and test existing and new software applications. Integrate Best Value components from DoD wide systems into DCGS-A baseline A (D07) Item No. 170 Page 13 of 16 Exhibit R-2a DCGS-A COMMON MODULES (MIP) 420 Budget Item Justification

14 Exhibit R-2a A (D07) DCGS-A COMMON MODULE S (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) D07 Continue to develop and enhance two-way Battle Command to include Joint Command and Control (JC2) interoperability Continued Technology Insertion of Current Force capabilities into integrated DCGS-A baseline Total B. Other Program Funding Summary To Compl Total BZ7316 DCGS-A Unit of Employment Continuing Continuing KA2550 Digital Topographic SPT SYS (DTSS) Comment: C. Acquisition Strategy DCGS-A will be executed via an evolutionary acquisition approach, providing incremental capability through Technology Insertion of Current Force systems and System Development and Demonstration (SDD) of Capability Demonstration Document (CDD) requirements. Each increment will incorporate and validate select DCGS-A capabilities into the overall DCGS-A system baseline, emphasizing migration of current force capabilities through integrated testing and continuous evaluation opportunities A (D07) Item No. 170 Page 14 of 16 Exhibit R-2a DCGS-A COMMON MODULES (MIP) 421 Budget Item Justification

15 Exhibit R-2a A (D08) DCGS-A SENSOR INTEG RATION (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) D08 COST (In Thousands) Actual to Total D08 DCGS-A SENSOR INTEGRATION (MIP) A. Mission Description and Budget Item Justification: Distributed Common Ground System - Army (DCGS-A) will serve as the primary ground system of systems for airborne and ground sensor platforms defined as Future Force systems. DCGS-A enables the commander to achieve situational understanding by leveraging multiple sources of data, information, and intelligence to synchronize the elements of Joint and Combined Arms combat power (maneuver, maneuver support and maneuver sustainment support). The core functions of DCGS-A are: collection and processing of space, airborne, ground and maritime Intelligence, Surveillance and Reconnaissance (ISR) sensor data; control of select Army and joint ISR sensor systems; intelligence synchronization; ISR planning, reconnaissance and surveillance (R&S) integration; fusion of sensor information, and direction and distribution/dissemination of sensor information. It draws information from a wide variety of automated and manual sources; on-board sensors, space platforms, unattended air and ground vehicles, existing and new ISR capabilities, and an assortment of databases to enable the land component commander to execute battle command, synchronize fires and effects, rapidly shift battle focus, achieve situational understanding, protect the force, and employ his forces more effectively. DCGS-A allows commanders at all levels to visualize and understand the threat and environment, predict threat intentions, execute targeting through targeting support, conduct ISR integration and support Information Operations. This project addresses Intelligence, Surveillance and Reconnaissance (ISR) sensor integration and interoperability with existing and new platforms and sensors to include a common data link solution. FY09 funds integration of new and modified sensor data into DCGS-A Systems, Test and Training of the new capability. Funding for this effort continues under Project 956 beginning in. Accomplishments/Planned Program: Continue to isolate and integrate Current Force Multi-INT sensor (Human Intelligence, Imagery Intelligence, Signal Intelligence, Measurement and Signature Intelligence)data into the DCGS-A network Continued planning and analysis of Future Force Multi-INT sensor modules for incorporation into the DCGS-A network Continue to refactor Current Force ISR capabilities in the DCGS-A infrastructure Continued development of training materials for V3 and Mobile systems Total B. Other Program Funding Summary To Compl Total BZ7316 DCGS-A Unit of Employment Continuing Continuing A (D08) Item No. 170 Page 15 of 16 Exhibit R-2a DCGS-A SENSOR INTEGRATION (MIP) 422 Budget Item Justification

16 Exhibit R-2a A (D08) DCGS-A SENSOR INTEG RATION (MIP) ARMY RDT&E BUDGET ITEM JUSTIFICATION (R2a Exhibit) D08 Comment: C. Acquisition Strategy DCGS-A will be executed via an evolutionary acquisition approach, providing incremental capability through Technology Insertion of Current Force systems and System Development and Demonstration (SDD) of Capability Demonstration Document (CDD) requirements. Each increment will incorporate and validate select DCGS-A capabilities into the overall DCGS-A system baseline, emphasizing migration of current force capabilities through integrated testing and continuous evaluation opportunities A (D08) Item No. 170 Page 16 of 16 Exhibit R-2a DCGS-A SENSOR INTEGRATION (MIP) 423 Budget Item Justification

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